- Author:N Nakanishi
- Publisher:Wspc (November 27, 1990)
- Pages:452 pages
- FB2 format1525 kb
- ePUB format1429 kb
- DJVU format1758 kb
- Formats:mbr doc mobi lrf
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Article citationsMore . N. Nakanishi and I. Ojima, Covariant operator formalism of gauge theories and quantum gravity - World Sci. Lect.
This book provides a thorough description of the manifestly covariant canonical formalism of the abelian and non-abelian gauge theories and . Published November 1st 1990 by World Scientific Publishing Company.
This book provides a thorough description of the manifestly covariant canonical formalism of the abelian and non-abelian gauge theories and quantum gravity. The emphasis is on its non-perturbative nature and the non-use of the path-integral approach. The formalism presented here is extremely beautiful and transparent.
Электронная книга "Covariant Operator Formalism Of Gauge Theories And Quantum Gravity", Nakanishi Noboru, Ojima Izumi. Эту книгу можно прочитать в Google Play Книгах на компьютере, а также на устройствах Android и iOS. Выделяйте текст, добавляйте закладки и делайте заметки, скачав книгу "Covariant Operator Formalism Of Gauge Theories And Quantum Gravity" для чтения в офлайн-режиме.
The theory is covariant loop quantum gravity (covariant LQG). Be-cause of this, we lack a predictive theory capable of describing phenomena where both gravity and quantum theory play a role. It is a theory that has grown historically via a long indirect path, briey summarized at the end of this chapter. The book does not follows the historical path. Examples are the center of a black hole, very early cosmology, the structure of Nature at very short scale, or simply the scattering amplitude of two neutral particles at small impact parameter and high energy.
Publisher: World Scientific Pub Co Inc, 1991. This book provides a thorough description of the manifestly covariant canonical formalism of the abelian and non-abelian gauge theories and quantum gravity.
Part of the Lecture Notes in Physics book series (LNP, volume 176) . It is an extension of the covariant operator formalism of gauge theory based upon the BRS invariance: The subsidiary condition specifying physical states, the notion of observables, and the structure of the physical subspace at finite temperatures are clarified together with the key formula characterizing the t vacuum. Gauge Theory Finite Temperature Negative Norm Bogoliubov Transformation Physical Subspace. These keywords were added by machine and not by the authors.
This quantum gauge theory of gravity is a renormalizable quantum . These notes summarize the lectures delivered in the V Mexican School of Particle Physics, at the University of Guanajuato.
This quantum gauge theory of gravity is a renormalizable quantum theory. Topics include an introduction to quantum gravity, covariant quantization, quantum cosmological models, particle creation and emission by black holes, the aims and achievements of twistor theory, the impact of quantum gravitational theory on particle physics, and the basic structure of the universe as implied by quantum theory.
N. Ojima, Covariant Operator Formalism of Gauge Theories and Quantum Gravity, World Scientic Lecture notes in Physics, . 7, World Scientic, 1990. J. Glimm and A. Jae, Quantum Physics: A Functional Integral Point of View, Springer-Verlag, New-York, 1981. G. ’t Hooft and M. Veltman, Nucl.
Progress of Theoretical Physics, Vol. 89, No. 2, February 1993. How to Solve the Covariant Operator Formalism. The exact covariant operator solution and some lower-point exact Wightman functions are constructed explicitly
Progress of Theoretical Physics, Vol. of Gauge Theories and Quantum Gravity. in the Heisenberg Picture. III. - Two-Dimensional Nonabelian BF Theory -. Mitsuo Abe and Noboru Nakanishi. Received September 10, 1992). The exact covariant operator solution and some lower-point exact Wightman functions are constructed explicitly. It is shown that there is no. ultraviolet divergence in the Wightman functions. In the context of the BF theory, the system. coupled with the Dirac field is also studied.